首页> 美国卫生研究院文献>Journal of Fungi >Phylogenetic Position of Shiraia-Like Endophytes on Bamboos and the Diverse Biosynthesis of Hypocrellin and Hypocrellin Derivatives
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Phylogenetic Position of Shiraia-Like Endophytes on Bamboos and the Diverse Biosynthesis of Hypocrellin and Hypocrellin Derivatives

机译:Shiraia样内体细胞对竹子的系统发育位置及多元菌蛋白和假瘤衍生物的不同生物合成

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摘要

The main active ingredients of the fruiting bodies of Shiraia bambusicola and Rubroshiraia bambusae are Hypocrellins, belonging perylenequinones with potential photodynamic activity against cancer and microbial diseases. However, the strains of S. bambusicola and R. bambusae do not produce hypocrellins in culture, so resource exploitation of natural products was seriously restricted. In this study, a series of novel Shiraia-like fungal endophyte strains, with varying sporulation ability and synthesizing diverse secondary metabolites, was isolated from different bamboos. Based on phylogenetic analyses and morphological characteristics of the endophytes, Pseudoshiraia conidialis gen. et sp. nov. is proposed. The secondary metabolites of different fruiting bodies and strains have been comprehensively analyzed for the first time, finding that the endophytic strains are shown not only to produce hypocrellins, but also other perylenequinonoid compounds. It was noteworthy that the highest yield of total perylenequinone production and hypocrellin A appeared in P. conidialis CNUCC 1353PR (1410.13 mg/L), which was significantly higher than any other wild type P. conidialis strains in published reports. In view of these results, the identification of Shiraia-like endophytes not only confirm the phylogenetic status of similar strains, but will further assist in developing the production of valuable natural products.
机译:Shiraia Bambusicola和Rubroshiraia Bambusae的果实的主要活性成分是囊扣,属于患有癌症和微生物疾病的潜在光动力活动的细胞醌。然而,S. Bambusicola和R. Bambusae的菌株不会产生培养中的毛细胞素,因此对天然产品的资源开发受到严重限制。在本研究中,从不同的竹子中分离出具有不同孢子化能力和合成不同的次级代谢物的一种新型的Shiraia样真菌内胚细胞菌株。基于神经发育分析和内腔内的形态特征,Pseudoshiraia Conidialis Gen。等SP。 11月。提出。已经全面分析了不同果实体和菌株的次要代谢物,发现内心菌株不仅示出为产生绒毛蛋蛋白,还显示出其他细胞蛋白化合物。值得注意的是,在P.Conidialis CNUCC 1353PR(1410.13mg / L)中出现的全部内醌生产和假侵入素A的最高产量显着高于发表报告中的任何其他野生型P. Conidialis菌株。鉴于这些结果,Shiraia样内体细胞的鉴定不仅确认了类似菌株的系统发育状态,而且还将进一步帮助开发有价值的天然产物的生产。

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